UniProt accession
A0A8S5SYT2 [UniProt]
Protein name
Uncharacterized protein
RBP type
TF
Evidence UniProt/TrEMBL
Probability 1,00
TF
Evidence RBPdetect
Probability 0,88
TF
Evidence RBPdetect2
Probability 0,63
Protein sequence
MKNKIVTAIFKDSTHTKVSDVWQYDYGQILRIQGLNLPTAVEVDFAVAGSSESIARIGTTKDGVTDVVIPDSLIETGNNLVAYIYLRDAESGNTEYQIDMLVTKRAKPEAYDRPEDKELFGQAIEAVNTAADRAEKARQTAQEAAQKAGLDAEQTAQDRVEVAKMVETVTDISEQVKKVEELSNKAQESATQAGTSATAAEKAKAQAETAAGKTAEDRTAVNQAKIDVDEVQKAVRADRAAVEEAKQSVEQLSNAIPESAQVGVQAVNQAKQTAVDEIARTGISHKTAVEGAGTQAVESVDNAKTTATEAVEIAKTEAVQAVQAEGTKQTGNVSAEGAKQIKEVQDKGAEVLQSIPENFATQMETKLNKQQGIENKGKVLVIGEDGNVVPEEVASGGGDGIAIINTMSGESPLAIPDSAERVNKRLELGGKTEQVQTSGKNLFDTKTYRDMNGCEIINNNQISFIQNLAKITYEIKLDSGDYRISFKRKKYSSITIRNGETVLHTNGGENDYGYNIKLSEPAVISVEFTSGQNPNAEQRYVYDIQLETGTTATPYEPYTGGKPSPSPEYPQEIKNVGKWNEETRKYEVDVKITGKNLFDKRLLEGGEVVEFNGVECYKYIDNPYNFKYKGKFENGQQYAFTLRILRSASKESNISDMVIVYTDGSMKQMRFRHGELKTFVSDNGKTIDYFSGAHNFSIDCYLDLSVTRLSVGGQDAGYDPYKEQTITLTSDRPITKWDRLVEQGGQIGWLYGTRDVIFTGDESWMMRTETDMSVWFVRYNCLPGIKTHNVAQNIGAYSNYALWERELANNRDGKFCTHGNPSNNFLLFGMSKDYTVETFKTWLREKNKSGKPMCLTYPTESTEFVPIQQSEQNAIRALKTYYPTTVITADGGELDPDIKVTYTADTKNYIDNKVSAKVASIIRQYRLNTANLLSLMPMETQAAMIENDTNNILENAEEMKHE
Physico‐chemical
properties
protein length:962 AA
molecular weight: 106350,30190 Da
isoelectric point:5,01771
aromaticity:0,07380
hydropathy:-0,58451

Domains

View on InterPro
A0A8S5SYT2
1 962 aa

ATT Attachment Domain STR Structural Domain RBD Receptor-Binding Domain CBM Carbohydrate-Binding Module LEC Lectin-like Domain ENZ Enzymatic Domain CHP Intramolecular Chaperone LNK Linker/Spacer Domain TAS Tail-Associated Structural TTP Tail Tubular Protein UNK Uncharacterized Domain Unmapped

Taxonomy

Phage
Siphoviridae sp. ctL4w2 [NCBI] · taxon 2827844
Host No host information

Coding sequence (CDS)

Genbank protein accession
DAF56169.1 [NCBI]
Genbank nucleotide accession
BK032709 [NCBI]
CDS location
range 1368 -> 4256
strand -
CDS
TTGAAAAATAAAATAGTAACAGCAATTTTTAAAGATTCCACCCACACCAAAGTAAGTGACGTTTGGCAATATGATTACGGACAGATATTAAGGATACAAGGACTTAACTTGCCAACAGCTGTGGAAGTGGATTTTGCAGTTGCCGGATCAAGCGAGTCCATTGCAAGAATCGGCACAACCAAGGACGGCGTAACTGATGTGGTAATCCCGGACTCTCTAATCGAGACCGGTAACAACCTTGTAGCCTATATATATCTTAGAGATGCGGAATCTGGCAACACGGAGTACCAGATTGACATGCTCGTCACCAAGCGGGCAAAGCCGGAAGCCTACGATAGGCCGGAAGATAAAGAATTGTTTGGCCAAGCTATCGAAGCAGTTAATACCGCCGCAGACAGGGCAGAAAAGGCAAGGCAGACCGCGCAAGAAGCCGCTCAAAAAGCAGGACTGGATGCTGAACAGACAGCGCAGGACAGAGTAGAAGTGGCTAAGATGGTAGAGACGGTCACCGATATTTCTGAACAGGTCAAAAAGGTTGAGGAGTTAAGCAACAAAGCACAAGAATCCGCTACGCAAGCCGGGACATCAGCGACAGCAGCAGAAAAAGCTAAAGCACAGGCCGAAACAGCGGCAGGGAAGACGGCAGAGGATAGAACAGCAGTCAATCAAGCAAAAATAGACGTAGACGAAGTACAGAAAGCGGTAAGAGCCGATAGAGCAGCCGTGGAAGAAGCAAAACAGAGCGTAGAGCAGCTAAGCAATGCGATACCAGAATCTGCACAAGTAGGCGTACAAGCGGTCAATCAAGCCAAACAGACAGCGGTGGATGAAATCGCACGAACTGGAATATCTCATAAGACAGCCGTAGAGGGCGCAGGGACGCAAGCAGTTGAGAGCGTGGATAATGCCAAGACAACAGCCACAGAAGCCGTGGAAATAGCAAAAACCGAAGCCGTACAGGCAGTACAGGCAGAGGGTACTAAGCAGACTGGCAATGTTTCCGCAGAGGGAGCGAAGCAGATCAAGGAAGTACAGGATAAAGGCGCAGAGGTATTGCAGTCTATTCCGGAAAACTTTGCAACGCAGATGGAAACTAAGCTGAATAAACAGCAGGGAATCGAGAACAAGGGCAAAGTCCTTGTGATTGGCGAAGATGGTAATGTAGTGCCTGAAGAAGTCGCTAGTGGCGGTGGAGACGGTATTGCAATCATAAATACCATGAGCGGAGAAAGCCCCCTTGCGATACCAGACAGTGCAGAAAGAGTAAATAAGAGGTTGGAGCTTGGTGGAAAGACGGAGCAGGTGCAGACGAGTGGGAAGAATTTGTTTGATACAAAAACATACCGTGACATGAATGGATGCGAAATTATCAACAACAATCAAATATCGTTTATTCAAAATCTCGCAAAAATTACGTATGAGATTAAATTGGATAGTGGTGATTACAGAATATCGTTTAAGCGGAAAAAATATTCTTCCATTACTATACGGAACGGAGAAACTGTCTTGCATACGAATGGTGGAGAAAATGACTATGGATATAATATCAAGTTAAGTGAGCCTGCGGTAATTAGTGTGGAATTTACAAGTGGTCAGAATCCAAATGCGGAACAGAGATACGTTTATGATATCCAATTAGAAACAGGAACTACTGCCACTCCTTACGAACCCTACACAGGAGGTAAACCATCACCAAGCCCAGAATATCCACAGGAAATTAAAAATGTTGGTAAGTGGAATGAGGAAACAAGGAAGTATGAAGTGGATGTGAAAATTACTGGGAAGAATTTGTTTGATAAGCGTCTGCTTGAAGGCGGAGAAGTTGTTGAGTTTAACGGCGTAGAATGCTACAAGTATATTGATAATCCTTACAATTTCAAATACAAAGGAAAATTTGAGAATGGACAACAGTACGCATTCACGCTCCGCATATTAAGATCCGCATCGAAAGAATCAAATATCTCAGATATGGTAATCGTATACACGGATGGATCTATGAAACAGATGCGATTTAGACACGGGGAATTAAAAACATTTGTAAGCGATAATGGAAAAACGATTGATTATTTTTCTGGTGCACACAACTTTAGTATAGATTGTTATTTAGATTTAAGCGTCACTCGTTTAAGCGTGGGAGGACAAGATGCAGGATACGATCCATACAAAGAACAAACCATCACCCTCACATCCGACCGCCCAATAACCAAGTGGGACAGACTGGTAGAGCAGGGTGGGCAGATTGGGTGGTTGTACGGAACACGAGATGTAATTTTTACGGGAGATGAATCATGGATGATGCGCACGGAAACCGATATGTCGGTATGGTTTGTCCGCTACAATTGCCTTCCTGGGATTAAAACACACAACGTTGCTCAGAACATCGGAGCTTACAGCAATTATGCGTTGTGGGAAAGAGAGCTTGCGAACAACAGAGATGGAAAATTCTGCACGCACGGTAATCCATCGAATAATTTCCTACTGTTCGGAATGTCAAAAGATTATACGGTGGAAACATTTAAAACGTGGCTAAGAGAAAAGAATAAATCTGGAAAACCCATGTGCTTAACTTACCCAACAGAGTCTACCGAATTCGTCCCCATCCAACAATCCGAGCAAAACGCAATCCGAGCATTAAAAACCTACTACCCTACCACAGTCATCACAGCAGATGGAGGGGAGCTTGACCCAGATATCAAAGTGACCTACACAGCAGACACCAAGAACTACATCGATAACAAAGTATCTGCTAAAGTGGCGAGCATTATAAGACAATATCGATTAAATACGGCAAATCTGCTATCTTTAATGCCTATGGAGACACAGGCAGCGATGATAGAAAACGACACAAATAACATTTTAGAAAACGCGGAGGAAATGAAACATGAATAA

Genome Context

Tertiary structure

A0A8S5SYT2
ColabFold structure
Source ColabFold
pLDDT 75.2
Oligomeric state monomer